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Evidence for a terminal Pt(iv)-oxo complex exhibiting diverse reactivity

机译:终端Pt(iv)-氧配合物表现出不同反应性的证据

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Terminal oxo complexes of transition metals have critical roles in various biological and chemical processes. For example, the catalytic oxidation of organic molecules, some oxidative enzymatic transformations, and the activation of dioxygen on metal surfaces are all thought to involve oxo complexes. Moreover, they are believed to be key intermediates in the photocatalytic oxidation of water to give molecular oxygen, a topic of intensive global research aimed at artificial photosynthesis and water splitting. The terminal oxo ligand is a strong π-electron donor, so it readily forms stable complexes with high-valent early transition metals. As the d orbitals are filled up with valence electrons, the terminal oxo ligand becomes destabilized. Here we present evidence for a d~n (n > 5) terminal oxo complex that is not stabilized by an electron withdrawing ligand framework. This d Pt(iv) complex exhibits reactivity as an inter- and intramolecular oxygen donor and as an electrophile. In addition, it undergoes a water activation process leading to a terminal dihydroxo complex, which may be relevant to the mechanism of catalytic reactions such as water oxidation.
机译:过渡金属的末端羰基配合物在各种生物和化学过程中都起着至关重要的作用。例如,有机分子的催化氧化,一些氧化酶的转化以及金属表面上双氧的活化都被认为与氧配合物有关。此外,据信它们是水的光催化氧化以产生分子氧的关键中间体,这是针对人工光合作用和水分解的全球深入研究的主题。末端氧代配体是强π电子供体,因此它容易与高价早期过渡金属形成稳定的络合物。当d轨道充满价电子时,末端氧代配体变得不稳定。在这里,我们提供了一个d〜n(n> 5)末端羰基配合物的证据,该配合物不被吸电子配体骨架所稳定。该d Pt(iv)配合物表现出作为分子间和分子内氧供体和亲电子试剂的反应性。另外,它经历水活化过程导致末端二羟基复合物,这可能与催化反应的机理如水氧化有关。

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